Characteristics and kinetics of steam-gasification regeneration for Coked FCC catalyst in a micro-fluidized bed reactor

被引:0
作者
Zhang, Yuming [1 ,2 ]
Sun, Guogang [1 ]
Gao, Shiqiu [2 ]
Xu, Guangwen [2 ]
机构
[1] State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Beijing
[2] State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing
来源
Shiyou Xuebao, Shiyou Jiagong/Acta Petrolei Sinica (Petroleum Processing Section) | 2014年 / 30卷 / 06期
关键词
FCC catalyst; Kinetics; Micro fluidized bed; Regeneration; Steam gasification;
D O I
10.3969/j.issn.1001-8719.2014.06.013
中图分类号
学科分类号
摘要
The characteristics and kinetics of steam gasification regeneration were investigated for two kinds of coked fluid catalytic cracking (FCC) catalysts (i.e., Coked FCC-1 and Coked FCC-2) in a micro-fluidized bed reactor analyzer (MFBRA). FCC-1 was a commercial catalyst from the industrial FCC process, while FCC-2 was specially designed with both catalytic effects of heavy oil cracking and coke gasification. Coke on the two catalysts was gasified with steam at different temperatures to investigate its reaction behavior and kinetics. The results showed that the produced gas from steam gasification of the deposited carbon on the catalyst contained above 70 % volume fraction of H2 and CO. Gasification rate first increased and then slowly decreased with the increase of carbon conversion. In comparison with coked FCC-1 catalyst, the time required for regenerating coked FCC-2 was shortened by more than 30%, as result of adding alkaline metal oxides to it and adjusting its pore sizes. Both homogenous model (HM) and shrinking core model (SCM) were used to correlate the steam gasification behavior and kinetic parameters of deposited coke, indicating that the HM allowed better fitting for the experimental data. The activation energy for the coke gasification on FCC-2 was 116.2 kJ/mol, lower than that of FCC-1 (151.4 kJ/mol), which verified that the coked FCC-2 was easier to be regenerated by steam gasification. ©, 2014, Science Press. All right reserved.
引用
收藏
页码:1043 / 1051
页数:8
相关论文
共 50 条
[41]   Reduced-order model for CaO carbonation kinetics measured using micro-fluidized bed thermogravimetric analysis [J].
Wang, Hui ;
Li, Zhenshan ;
Li, Ye ;
Cai, Ningsheng .
CHEMICAL ENGINEERING SCIENCE, 2021, 229
[42]   Hydrogen production by biomass gasification in a fluidized-bed reactor promoted by an Fe/CaO catalyst [J].
Huang, Bing-Shun ;
Chen, Hsin-Yi ;
Chuang, Kui-Hao ;
Yang, Ren-Xuan ;
Wey, Ming-Yen .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2012, 37 (08) :6511-6518
[43]   Hydrogen Production from Bio-Char via Steam Gasification in a Fluidized-Bed Reactor [J].
Ma, Zhong ;
Zhang, Su-Ping ;
Xie, Deng-Yin ;
Yan, Yong-Jie ;
Ren, Zheng-Wei .
CHEMICAL ENGINEERING & TECHNOLOGY, 2013, 36 (09) :1599-1602
[44]   Comparison of reaction characteristics and kinetics between tar thermal cracking and steam reforming in a micro fluidized bed reaction analyzer [J].
Wu P. ;
Wang F. ;
Zeng X. ;
Zhan H. ;
Yue J. ;
Wang T. ;
Xu G. .
Huagong Xuebao/CIESC Journal, 2022, 73 (01) :362-375
[45]   Coal steam-gasification model in chemical regime to produce hydrogen in a gas-solid moving bed reactor using nuclear heat [J].
Belghit, A. ;
Gordillo, E. D. ;
El Issami, S. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2009, 34 (15) :6114-6119
[46]   The role of CaO in the steam gasification of plastic wastes recovered from the municipal solid waste in a fluidized bed reactor [J].
Lazzarotto, I. P. ;
Ferreira, S. D. ;
Junges, J. ;
Bassanesi, G. R. ;
Manera, C. ;
Perondi, D. ;
Godinho, M. .
PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2020, 140 :60-67
[47]   Effect of the combination of squid-fin-inspired wall and internal vortex generator on methane reduction in a micro-fluidized bed reactor [J].
Zhang, Shen ;
Li, Haoqi ;
Deng, Zhaofu ;
Chen, Yixiang ;
Guo, Peidong ;
Yang, Qian ;
Zhu, Yanyan ;
Wei, Liping .
FUEL, 2025, 381
[48]   Study on pressurized isothermal pyrolysis characteristics of low-rank coal in a pressurized micro-fluidized bed reaction analyzer [J].
Zhu, Yao ;
Wang, Qinhui ;
Li, Kaikun ;
Cen, Jianmeng ;
Fang, Mengxiang ;
Ying, Chengdong .
ENERGY, 2022, 240
[49]   Gas-liquid mass transfer and reaction characteristics of gas-liquid-solid circulating micro-fluidized bed [J].
Guo, Hao ;
Ma, Yongli ;
Sun, Yan ;
Liu, Mingyan .
CHEMICAL ENGINEERING JOURNAL, 2025, 503
[50]   Kinetics of Gaseous Species Formation During Steam Gasification of Municipal Solid Waste in a Fixed Bed Reactor [J].
Sirirermrux, N. ;
Laohalidanond, K. ;
Kerdsuwan, S. .
JOURNAL OF ENERGY RESOURCES TECHNOLOGY-TRANSACTIONS OF THE ASME, 2020, 142 (01)